论文标题

在芯片尺度平台中的激光冷却

Laser cooling in a chip-scale platform

论文作者

McGilligan, J. P., Moore, K. R., Dellis, A., Martinez, G. D., de Clercq, E., Griffin, P. F., Arnold, A. S., Riis, E., Boudot, R., Kitching, J.

论文摘要

围绕微型碱蒸气细胞建立的碎屑尺度原子设备是紧凑型测量和原子传感器的最前沿。我们展示了一个微型蒸气电池,该蒸气电池被积极粉刷为超高伏库(UHV),以实现激光冷却。光栅磁磁陷阱(GMOT)与4毫米厚的SI/玻璃真空电池合并,以证明完全微调激光冷却平台的可行性。 Rubidium中的两步光激发过程用于克服GMOT成像的表面碎片限制。微型UHV细胞提供的明确的微型化和形式上的可燃性为将来紧凑的冷原子传感器提供了有希望的平台。

Chip-scale atomic devices built around micro-fabricated alkali vapor cells are at the forefront of compact metrology and atomic sensors. We demonstrate a micro-fabricated vapor cell that is actively-pumped to ultra-high-vacuum (UHV) to achieve laser cooling. A grating magneto optical trap (GMOT) is incorporated with the 4 mm-thick Si/glass vacuum cell to demonstrate the feasibility of a fully-miniaturized laser cooling platform. A two-step optical excitation process in rubidium is used to overcome surface-scatter limitations to the GMOT imaging. The unambiguous miniaturization and form-customizability made available with micro-fabricated UHV cells provide a promising platform for future compact cold-atom sensors.

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